| Literature DB >> 28587594 |
Chengfei Sun1, Yongchaox Niu2, Xing Ye3, Junjian Dong1, Wushu Hu2, Qingkai Zeng1,4, Zhihang Chen1,4, Yuanyuan Tian1,4, Jin Zhang5, Maixin Lu1.
Abstract
BACKGROUND: The mandarin fish (Siniperca chuatsi) is an important and widely cultured fish in China. However, the lack of selective breeding of mandarin fish in previous decades has resulted in a decline in the growth rate of pond-cultured fish, a shortened period of sexual maturity, and reduced disease resistance; these issues seriously affect the quality and safety of the fish products. Therefore, it is necessary to establish a selective breeding program for the mandarin fish to improve the economical traits of the fish and to sustain the development of the mandarin fish industry.Entities:
Keywords: Growth-related trait; Linkage map; Quantitative trait locus; Sex determination; Siniperca chuatsi
Mesh:
Year: 2017 PMID: 28587594 PMCID: PMC5461734 DOI: 10.1186/s12864-017-3830-3
Source DB: PubMed Journal: BMC Genomics ISSN: 1471-2164 Impact factor: 3.969
Characteristics of the genetic maps of the mandarin fish
| LG ID | Integrated map | Maternal map | Paternal map | ||||
|---|---|---|---|---|---|---|---|
| No. of SNPs | Distance (cM) | Average interlocus distance (cM) | No. of SNPs | Distance (cM) | No. of SNPs | Distance (cM) | |
| 1 | 261 | 94.14 | 0.36 | 7 + 22a | 10.81 + 39.09a | 242 | 108.71 |
| 2 | 226 | 81.55 | 0.36 | 17 | 59.85 | 214 | 83.11 |
| 3 | 208 | 124.64 | 0.60 | 47 | 75.11 | 178 | 111.26 |
| 4 | 184 | 49.84 | 0.27 | 64 | 54.63 | 156 | 52.89 |
| 5 | 147 | 84.81 | 0.58 | 77 | 75.28 | 84 | 86.16 |
| 6 | 145 | 86.47 | 0.60 | 49 | 85.92 | 108 | 131.40 |
| 7 | 138 | 64.17 | 0.47 | 76 | 54.52 | 80 | 82.28 |
| 8 | 137 | 79.77 | 0.58 | 79 | 36.84 | 81 | 77.58 |
| 9 | 136 | 106.68 | 0.78 | 37 | 65.02 | 106 | 117.52 |
| 10 | 134 | 124.75 | 0.93 | 77 | 64.59 | 89 | 108.25 |
| 11 | 128 | 81.77 | 0.64 | 65 | 66.56 | 77 | 116.15 |
| 12 | 126 | 68.04 | 0.54 | 104 | 66.81 | 31 | 54.04 |
| 13 | 125 | 82.11 | 0.66 | 80 | 80.07 | 63 | 92.37 |
| 14 | 123 | 86.75 | 0.71 | 78 | 75.13 | 66 | 71.88 |
| 15 | 122 | 92.02 | 0.75 | 70 | 70.82 | 70 | 94.70 |
| 16 | 120 | 95.38 | 0.79 | 89 | 97.51 | 44 | 95.31 |
| 17 | 114 | 66.41 | 0.58 | 68 | 58.59 | 81 | 50.04 |
| 18 | 113 | 63.81 | 0.56 | 55 | 56.61 | 73 | 107.91 |
| 19 | 112 | 99.17 | 0.89 | 65 | 91.45 | 68 | 92.12 |
| 20 | 110 | 63.90 | 0.58 | 68 | 61.84 | 65 | 93.69 |
| 21 | 102 | 56.00 | 0.55 | 46 | 27.27 | 68 | 94.18 |
| 22 | 97 | 59.58 | 0.61 | 63 | 77.48 | 58 | 61.87 |
| 23 | 88 | 82.36 | 0.94 | 48 | 64.37 | 54 | 65.39 |
| 24 | 87 | 77.89 | 0.90 | 54 | 60.02 | 59 | 66.76 |
| Total | 3283 | 1972 | 0.60 | 1505 | 1576.20 | 2215 | 2115.57 |
| Average | 137 | 82.17 | 0.60 | 63 | 65.68 | 92 | 88.15 |
aLG1 in the maternal map was divided into two LGs due to weak linkage between the distant markers
Fig. 1Linkage group lengths and marker distributions of the high-resolution ddRAD-based SNP linkage map of the mandarin fish. Within each linkage group, red, blue, and yellow lines represent maternal heterozygous SNPs, paternal heterozygous SNPs, and SNPs heterozygous in both the parents, respectively. The details of the genetic map are given in Additional file 3: Table S3
Fig. 2Circos diagram representing the syntenic relationships between the integrated map and the maternal map a or paternal map b of the mandarin fish. Each colored arc represents a marker match between the two maps
Characteristics of the sex determination QTL in the mandarin fish
| Traits | Nr | QTL | LG ID | Genetic position | Peak locus | LOD | Exp%a |
|---|---|---|---|---|---|---|---|
| Gender | 4129 | Gender-1 | 23 | 60.265 | r1_73194 | 17.73 | 53.3 |
| Gender | 4136 | Gender-1 | 23 | 62.851 | r2_237649 | 13.59 | 44.5 |
| Gender | 4139 | Gender-1 | 23 | 63.967 | r2_42410 | 15.13 | 50 |
| Gender | 4141 | Gender-1 | 23 | 65.431 | r1_33008 | 14.76 | 44.9 |
| Gender | 4148 | Gender-1 | 23 | 68.707 | r1_99172 | 11.58 | 37.1 |
aExp%, percentage of the explained phenotypic variation
Fig. 3Detection of the sex determination locus in the mandarin fish. LOD significance threshold levels were determined on the basis of 1000 permutations at a significance level of P < 0.05
Characteristics of the growth-related QTLs in the mandarin fish (LOD > 3.4)
| Traits | Nr | QTL | LG ID | Genetic position | Peak locus | LOD | Exp%a |
|---|---|---|---|---|---|---|---|
| FL | 1011 | Growth-1 | 4 | 28.703 | r2_107263 | 3.68 | 14.7 |
| FL | 1966 | Growth-2 | 10 | 12.302 | r1_32378 | 3.77 | 16.9 |
| FL | 3146 | Growth-3 | 16 | 75.207 | r1_23321 | 3.6 | 13.9 |
| FL | 3523 | Growth-4 | 19 | 35.17 | r1_38594 | 3.41 | 12.8 |
| FW | 1966 | Growth-5 | 10 | 12.302 | r1_32378 | 3.93 | 17.2 |
| FH | 1966 | Growth-6 | 10 | 12.302 | r1_32378 | 3.74 | 16.7 |
| FH | 1973 | Growth-6 | 10 | 17.978 | r1_63812 | 3.45 | 12.9 |
| IL | 3038 | Growth-7 | 16 | 51.254 | r1_75760 | 3.4 | 12.4 |
| IL | 3083 | Growth-7 | 16 | 52.079 | r1_78507 | 3.65 | 13.4 |
| IL | 3095 | Growth-8 | 16 | 53.187 | r1_63885 | 4.15 | 14.9 |
| IL | 3103 | Growth-8 | 16 | 54.097 | r1_98745 | 3.91 | 14.6 |
| IL | 3107 | Growth-8 | 16 | 54.756 | r1_62529 | 3.85 | 13.9 |
| IL | 3110 | Growth-9 | 16 | 56.141 | r1_23000 | 3.51 | 14.1 |
| IH | 3081 | Growth-10 | 16 | 51.63 | r1_66472 | 3.75 | 13.7 |
| IH | 3095 | Growth-11 | 16 | 53.187 | r1_63885 | 4.7 | 16.7 |
| IH | 3103 | Growth-11 | 16 | 54.097 | r1_98745 | 4.42 | 16.6 |
| IH | 3107 | Growth-11 | 16 | 54.756 | r1_62529 | 4.43 | 15.8 |
| IH | 3109 | Growth-11 | 16 | 55.655 | r1_94016 | 4.19 | 14.8 |
aExp%, percentage of the explained phenotypic variation